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Influence of Hydrocarbon Base Oil Molecular Structure on Lubricating Properties in Nano-scale Thin Film

机译:烃基油分子结构对纳米薄膜润滑性能的影响

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摘要

In nano-scale thin film, the lubricant molecular structure may have more significant impact to lubricating performance than in bulk states. In order to investigate the influence of hydrocarbon base oil molecular structure to lubricating properties, three base oil samples with different molecular structure were synthesized in this study, the molecular structure was detected. Film thickness and friction coefficient were measured by EHD2 ultra thin film measurement system, and wear scar was evaluated by four-ball tester. The base oil with linear molecular structure show lower film thickness and friction coefficient, even the base oil has higher viscosity and viscosity index than other samples, while the branched structure makes the molecule more rigid than linear one, which increase the film thickness and friction coefficient. The linear molecules with high viscosity index sustained oil film at high temperature, which reduced the wear scar.
机译:在纳米级薄膜中,润滑剂分子结构可能对润滑性能的影响更大,而不是散装状态。 为了研究烃基油分结构对润滑性能的影响,在该研究中合成了三种具有不同分子结构的基础油样品,检测分子结构。 通过EHD2超薄薄膜测量系统测量膜厚度和摩擦系数,并通过四球测试仪评估磨损瘢痕。 具有线性分子结构的基础油显示出较低的膜厚度和摩擦系数,甚至基础油具有比其他样品更高的粘度和粘度指数,而支化结构使分子比线性较强,这增加了膜厚度和摩擦系数 。 具有高粘度指数的线性分子在高温下持续油膜,减少磨损瘢痕。

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